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Zachary Teitel
Zachary Teitel
PhD Student, Department of Integrative Biology, University of Guelph
在 uoguelph.ca 的电子邮件经过验证
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引用次数
引用次数
年份
The dynamics of resource allocation and costs of reproduction in a sexually dimorphic, wind‐pollinated dioecious plant
Z Teitel, M Pickup, DL Field, SCH Barrett
Plant Biology 18 (1), 98-103, 2016
462016
Effects of cortisol administration on cooperative behavior in meerkat helpers
P Santema, Z Teitel, M Manser, N Bennett, T Clutton-Brock
Behavioral Ecology 24 (5), 1122-1127, 2013
322013
Crop diversity and plant–plant interactions in urban allotment gardens
ME Woods, R Ata, Z Teitel, NM Arachchige, Y Yang, BE Raychaba, ...
Renewable Agriculture and Food Systems 31 (6), 540-549, 2016
92016
Defence by duplication: The relation between phenotypic glyphosate resistance and EPSPS gene copy number variation in Amaranthus palmeri
SB Yakimowski, Z Teitel, CM Caruso
Molecular Ecology 30 (21), 5328-5342, 2021
72021
Assessing the effects of hybridization and precipitation on invasive weed demography using strength of selection on vital rates
Z Teitel, A Klimowski, LG Campbell
BMC Evolutionary Biology 16, 1-13, 2016
72016
Contemporary evolution and the dynamics of invasion in crop–wild hybrids with heritable variation for two weedy life–histories
LG Campbell, Z Teitel, MN Miriti
Evolutionary Applications 9 (5), 697-708, 2016
72016
Germination rates of weedy radish populations (Raphanus spp.) altered by crop‐wild hybridisation, not human‐mediated changes to soil moisture
Z Teitel, AE Laursen, LG Campbell
Weed Research 56 (2), 149-158, 2016
72016
Context-specific enhanced invasiveness of Raphanus crop–wild hybrids: A test for associations between greater fecundity and population growth
LG Campbell, Z Teitel, MN Miriti, AA Snow
Canadian Journal of Plant Science 94 (8), 1315-1324, 2014
52014
Escape, Resist, or Tolerate? Evolution of Defence Strategies in Response to Glyphosate Herbicide in an Agricultural Weed (Amaranthus palmeri)
Z Teitel
University of Guelph, 2021
12021
Approaches in demographic modeling for predicting population persistence across a moisture gradient of an invasive, hybridizing weed (Raphanus SPP.)
Z Teitel
Toronto Metropolitan University, 0
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